Auxin polar transport in Arabidopsis under simulated microgravity conditions — Relevance to growth and development
Activity of auxin polar transport in inflorescence axes of Arabidopsis thaliana grown under simulated microgravity conditions was studied in relation to the growth and development. Seeds were germinated and allowed to grow on an agar medium in test tubes on a horizontal clinostat. Horizontal clinost...
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Veröffentlicht in: | Advances in space research 1999, Vol.23 (12), p.2033-2036 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Activity of auxin polar transport in inflorescence axes of
Arabidopsis thaliana grown under simulated microgravity conditions was studied in relation to the growth and development. Seeds were germinated and allowed to grow on an agar medium in test tubes on a horizontal clinostat. Horizontal clinostat rotation substantially reduced the growth of inflorescence axes and the productivity of seeds of
Arabidopsis thaliana (ecotypes Landsberg
erecta and Columbia), although it little affected seed germination, development of rosette leaves and flowering. The activity of auxin polar transport in inflorescence axes decreased when
Arabidopsis plants were grown on a horizontal clinostat from germination stage, being ca. 60% of 1 g control. On the other hand, the auxin polar transport in inflorescence axes of
Arabidopsis grown in 1 g conditions was not affected when the segments were exposed to various gravistimuli, including 3-dimensional clinorotation, during transport experiments.
Pin-formed mutant of
Arabidopsis, having a unique structure of the inflorescence axis with no flower and extremely low levels of the activity of auxin polar transport in inflorescence axes and endogenous auxin, did not continue its vegetative growth under clinostat rotation. These facts suggest that the development of the system of auxin polar transport in
Arabidopsis is affected by microgravity, resulting in the inhibition of growth and development, especially during reproductive growth. |
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ISSN: | 0273-1177 1879-1948 |
DOI: | 10.1016/S0273-1177(99)00344-0 |